Elmer Stefan, Rogenmoser Lars, Kühnis Jürg, Jäncke Lutz
Division Neuropsychology, Institute of Psychology,
Division Neuropsychology, Institute of Psychology.
J Neurosci. 2015 Jan 7;35(1):366-71. doi: 10.1523/JNEUROSCI.3009-14.2015.
Absolute pitch (AP) refers to the rare ability to identify the chroma of a tone or to produce a specific pitch without reference to keyality (e.g., G or C). Previously, AP has been proposed to rely on the distinctive functional-anatomical architecture of the left auditory-related cortex (ARC), this specific trait possibly enabling an optimized early "categorical perception". In contrast, currently prevailing models of AP postulate that cognitive rather than perceptual processes, namely "pitch labeling" mechanisms, more likely constitute the bearing skeleton of AP. This associative memory component has previously been proposed to be dependent, among other mechanisms, on the recruitment of the left dorsolateral prefrontal cortex (DLPFC) as well as on the integrity of the left arcuate fasciculus, a fiber bundle linking the posterior supratemporal plane with the DLPFC. Here, we attempted to integrate these two apparently conflicting perspectives on AP, namely early "categorical perception" and "pitch labeling". We used electroencephalography and evaluated resting-state intracranial functional connectivity between the left ARC and DLPFC in a sample of musicians with and without AP. Results demonstrate significantly increased left-hemispheric theta phase synchronization in AP compared with non-AP musicians. Within the AP group, this specific electrophysiological marker was predictive of absolute-hearing behavior and explained ∼30% of variance. Thus, we propose that in AP subjects the tonal inputs and the corresponding mnemonic representations are tightly coupled in such a manner that the distinctive electrophysiological signature of AP can saliently be detected in only 3 min of resting-state measurements.
绝对音高(AP)是指一种罕见的能力,即能够识别音调的音级,或在不参照调性(如G或C)的情况下发出特定的音高。此前,有人提出绝对音高依赖于左听觉相关皮层(ARC)独特的功能 - 解剖结构,这种特殊特征可能使早期的“范畴知觉”得以优化。相比之下,目前流行的绝对音高模型假定,认知而非感知过程,即“音高标记”机制,更有可能构成绝对音高的核心框架。此前有人提出,这种联想记忆成分除其他机制外,还依赖于左背外侧前额叶皮层(DLPFC)的募集以及左弓状束的完整性,左弓状束是连接颞上后平面与DLPFC的纤维束。在此,我们试图整合关于绝对音高的这两种明显相互冲突的观点,即早期的“范畴知觉”和“音高标记”。我们使用脑电图技术,评估了有和没有绝对音高的音乐家样本中,左ARC和DLPFC之间的静息态颅内功能连接。结果表明,与没有绝对音高的音乐家相比,有绝对音高的音乐家左半球θ相位同步显著增加。在有绝对音高的组内,这种特定的电生理标记物可预测绝对听力行为,并解释了约30%的方差。因此,我们提出,在有绝对音高的受试者中,音调输入和相应的记忆表征紧密耦合,以至于仅在3分钟的静息态测量中就能显著检测到绝对音高独特的电生理特征。